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CO-APERTURE BROADBAND INFRARED OPTICAL SYSTEM

机译:并口宽带红外光学系统

摘要

The present invention discloses a co-aperture broadband infrared optical system, belonging to the field of infrared optical system. The system realizes long wave infrared (LWIR) imaging and broadband infrared spectrum measurement, and solves the problems of limited optical path layout, large volume and high cost of an optical system. The present invention includes a Cassegrain lens, a spectroscope, a reflector, several lens groups, an FPA interface and an optical fiber interface. Light (2 μm˜12 μm) is incident to the Cassegrain lens to be focused, then is split by the spectroscope, where 50% of the LWIR light (8 μm˜10 μm) passes through the lens group for aberration correction, and the image plane is focused again at the imaging interface. The other 50% of the LWIR light (8 μm˜10 μm) and the infrared reflected light (2 μm˜8 μm and 10 μm˜12 μm) pass through the lens group, and are reflected by the reflector, then focused at the optical fiber interface. The present invention is compact in overall structure and convenient and flexible to use, has relatively low cost, and can be integrated into an image-spectrum associated detection device to implement automatic detection and tracking, which can be widely used in civil and military fields such as environmental monitoring and infrared guidance.
机译:一种同孔径宽带红外光学系统,属于红外光学系统领域。该系统实现了长波红外(LWIR)成像和宽带红外光谱测量,解决了光路布局受限,光学系统体积大,成本高的问题。本发明包括卡塞格伦透镜,分光镜,反射器,几个透镜组,FPA接口和光纤接口。光(2μm〜12μm)入射到卡塞格林透镜上进行聚焦,然后由分光镜分开,其中50%的LWIR光(8μm〜10μm)通过透镜组进行像差校正,并且图像平面再次聚焦在成像界面。 LWIR光的其他50%(8μm〜10μm)和红外反射光(2μm〜8μm和10μm〜12μm)穿过透镜组,并由反射镜反射,然后聚焦在光纤接口。本发明总体结构紧凑,使用方便灵活,成本相对较低,可以集成到图像光谱相关的检测装置中进行自动检测和跟踪,可广泛应用于民用,军事等领域。作为环境监测和红外指导。

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